EP3103428A1 - Air fluidized therapy bed having pulmonary therapy - Google Patents
Air fluidized therapy bed having pulmonary therapy Download PDFInfo
- Publication number
- EP3103428A1 EP3103428A1 EP16172750.8A EP16172750A EP3103428A1 EP 3103428 A1 EP3103428 A1 EP 3103428A1 EP 16172750 A EP16172750 A EP 16172750A EP 3103428 A1 EP3103428 A1 EP 3103428A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- patient support
- air
- support apparatus
- coupled
- conduit
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
Links
- 238000002560 therapeutic procedure Methods 0.000 title claims abstract description 83
- 230000002685 pulmonary effect Effects 0.000 title abstract description 3
- 238000005243 fluidization Methods 0.000 claims abstract description 76
- 238000009527 percussion Methods 0.000 claims description 64
- 239000012530 fluid Substances 0.000 claims description 15
- 239000000463 material Substances 0.000 claims description 13
- 238000004891 communication Methods 0.000 claims description 9
- 230000003750 conditioning effect Effects 0.000 claims description 2
- 238000007726 management method Methods 0.000 description 7
- 230000001010 compromised effect Effects 0.000 description 5
- 238000010586 diagram Methods 0.000 description 5
- 239000004677 Nylon Substances 0.000 description 3
- 229920001778 nylon Polymers 0.000 description 3
- 230000010355 oscillation Effects 0.000 description 3
- 210000000779 thoracic wall Anatomy 0.000 description 3
- JOYRKODLDBILNP-UHFFFAOYSA-N Ethyl urethane Chemical compound CCOC(N)=O JOYRKODLDBILNP-UHFFFAOYSA-N 0.000 description 2
- 208000004210 Pressure Ulcer Diseases 0.000 description 2
- VYPSYNLAJGMNEJ-UHFFFAOYSA-N Silicium dioxide Chemical compound O=[Si]=O VYPSYNLAJGMNEJ-UHFFFAOYSA-N 0.000 description 2
- 238000011374 additional therapy Methods 0.000 description 2
- 238000012986 modification Methods 0.000 description 2
- 230000004048 modification Effects 0.000 description 2
- 230000001225 therapeutic effect Effects 0.000 description 2
- 201000003883 Cystic fibrosis Diseases 0.000 description 1
- 206010037368 Pulmonary congestion Diseases 0.000 description 1
- 208000028990 Skin injury Diseases 0.000 description 1
- 208000027418 Wounds and injury Diseases 0.000 description 1
- 239000011324 bead Substances 0.000 description 1
- 210000001124 body fluid Anatomy 0.000 description 1
- 238000001816 cooling Methods 0.000 description 1
- 230000006378 damage Effects 0.000 description 1
- 230000001419 dependent effect Effects 0.000 description 1
- 239000004744 fabric Substances 0.000 description 1
- 230000035876 healing Effects 0.000 description 1
- 208000014674 injury Diseases 0.000 description 1
- 238000000034 method Methods 0.000 description 1
- 239000012466 permeate Substances 0.000 description 1
- 239000000377 silicon dioxide Substances 0.000 description 1
- 125000006850 spacer group Chemical group 0.000 description 1
- -1 such as Substances 0.000 description 1
- 210000004243 sweat Anatomy 0.000 description 1
- 238000011282 treatment Methods 0.000 description 1
Images
Classifications
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Definitions
- the present disclosure is related to patient support apparatuses that provide air fluidized therapy. More specifically, the present disclosure is related to patient support apparatuses that provide air fluidized therapy and additional therapies utilizing the functionality of the air fluidized therapy system of the patient support apparatus.
- Patient support apparatuses that provide air fluidized therapy are well known in the art and are considered to be a specialized use device that supports at least a portion of the patient on the air fluidized section when the patient has highly compromised skin. For example burn patients, severe diabetics, or compromised elderly patients may be supported on the air fluidized therapy which has been shown to help reduce further injury and promote healing of the compromised skin.
- patient support apparatuses that provide air fluidized therapy do not provide other therapies may be found in beds or mattresses that do not provide air fluidized therapy.
- a patient support apparatus comprises an air supply, an air fluidization therapy bed, and a pulsator coupled to the air fluidization therapy bed.
- the air fluidization therapy bed includes a fluidization space and a fluidizable medium positioned in the fluidization space.
- the air fluidization therapy bed receives a flow of pressurized air from the air supply.
- the flow of pressurized air is operable to fluidize the fluidizable medium.
- the pulsator is positioned to transmit air pulses through the fluidized fluidizable medium to impart a percussive force to a body supported on air fluidization therapy bed.
- the pulsator is in fluid communication with the air supply and operable to form air pulses from at least a portion of the flow from the air supply.
- the frequency and magnitude of the air pulses are variable.
- the patient support apparatus further comprises a percussion/vibration controller operable to control the operation of the pulsator.
- the patient support apparatus further comprises a controller and a user interface, the user interface isoperable to receive inputs from a user indicative of at least one desired operating parameter of the percussion/vibration controller, the controller operable to modify the operation of the percussion/vibration controller to achieve the desired operating parameter.
- the patient support apparatus comprises a first conduit, a tap coupled to the first conduit, a second conduit coupled to the tap and the pulsator, a third conduit coupled to the tap and the air fluidization therapy bed, the third conduit smaller than the first conduit and the second conduit.
- the pulsator comprises a valve that is openable to allow air to flow through the second conduit and the valve of the pulsator.
- the valve of the pulsator is in communication with the space of the air fluidization therapy bed such that when the valve opens, air flows through the valve into the space.
- the valve opens and closes to create air pulses in the space of the air fluidization therapy bed.
- the air supply has a variable output, the output being modified to compensate for the flow of air used to provide the percussive forces.
- a patient support apparatus comprises an air supply, a first patient support zone comprising an air fluidization therapy bed, a second patient support zone comprising a plurality of inflatable support bladders, and a sonic emitter.
- the first patient support zone includes a fluidization space and a fluidizable medium positioned in the fluidization space.
- the air fluidization therapy bed receives a flow of pressurized air from the air supply.
- the flow of pressurized air is operable to fluidize the fluidizable medium.
- the sonic emitter is coupled to the second portion and positioned to transmit sonic waves through the bladers to impart a percussive force to a body supported on the second portion.
- the sonic emitter has a variable frequency and amplitude.
- the patient support apparatus further comprises a sonic controller operable to control the frequency and amplitude of the sonic emitter.
- the patient support apparatus further includes a controller operable to control the fluid supply and the sonic controller.
- the patient support apparatus further includes a user interface, the user interface operable to accept a user input indicative of a desired operating parameter of the sonic emitter.
- the controller modifies operation of the sonic controller to achieve the desired operating parameter of the sonic emitter.
- the second patient support zone is movable relative to the first patient support zone.
- the sonic emitter is coupled to the second patient support zone to move therewith.
- a patient support apparatus comprises an air supply, a first patient support zone comprising an air fluidization therapy bed, a second patient support zone comprising a plurality of inflatable support bladders, and a percussion assembly.
- the first patient support zone comprises a fluidization space and a fluidizable medium positioned in the fluidization space.
- the air fluidization therapy bed receives a flow of pressurized air from the air supply.
- the flow of pressurized air is operable to fluidize the fluidizable medium.
- the percussion assembly is coupled to the second portion.
- the percussion assembly includes a plurality of chambers. Each chamber includes a vent and is positioned to impart a percussive force to a body supported on the second portion when the chamber is inflated.
- the patient support apparatus further comprises a plurality of conduits, each conduit coupled to a respective chamber.
- the patient support apparatus comprises a plurality of valves, each valve associated with one of the conduits coupled to a respective chamber.
- the patient support apparatus includes a percussion/vibration controller that is operable to control the operation of the valves to selectively inflate the chambers.
- the valves are coupled to the air supply such that opening of one of the plurality of valves permits a flow of air from the air supply to a respective chamber.
- the vents of the chambers are sized such that they constrict flow out of each chamber, and wherein the flow of the air from the air supply is sufficient to rapidly expand the chamber when a valve is opened, the vent allowing the expanded chamber to contract when the valve is closed.
- the patient support apparatus further comprises a percussion/vibration controller operable to control the frequency and amplitude of the inflations of the chambers.
- the patient support apparatus further includes a controller operable to control the fluid supply and the percussion/vibration controller.
- the patient support apparatus further includes a user interface, the user interface operable to accept a user input indicative of a desired operating parameter of the percussion/vibration controller.
- the controller modifies operation of the percussion/vibration controller to achieve the desired operating parameter of the percussion/vibration controller.
- the second patient support zone is movable relative to the first patient support zone.
- the percussion assembly is coupled to the second patient support zone to move therewith.
- a patient support apparatus comprises an air supply, a first patient support zone comprising an air fluidization therapy bed, and a garment coupled to the air supply.
- the air fluidization therapy bed includes a fluidization space and a fluidizable medium positioned in the fluidization space.
- the air fluidization therapy bed receives a flow of pressurized air from the air supply.
- the flow of pressurized air is operable to fluidize the fluidizable medium.
- the garment includes a plurality of chambers. Each chamber includes a vent. Each chamber is positioned to impart a percussive force to a the body of a patient wearing the garment when a chamber is inflated.
- the patient support apparatus further comprises a plurality of conduits, each conduit coupled to a respective chamber.
- the patient support apparatus includes a percussion/vibration controller that is operable to control the operation of the valves to selectively inflate the chambers.
- valves are coupled to the air supply such that opening of one of the plurality of valves permits a flow of air from the air supply to a respective chamber.
- the vents of the chambers are sized such that they constrict flow out of each chamber, and wherein the flow of the air from the air supply is sufficient to rapidly expand the chamber when a valve is opened, the vent allowing the expanded chamber to contract when the valve is closed.
- the patient support apparatus further comprises a percussion/vibration controller operable to control the frequency and amplitude of the inflations of the chambers.
- the patient support apparatus further includes a controller operable to control the fluid supply and the percussion/vibration controller.
- the patient support apparatus further includes a user interface, the user interface operable to accept a user input indicative of a desired operating parameter of the percussion/vibration controller.
- the controller modifies operation of the percussion/vibration controller to achieve the desired operating parameter of the percussion/vibration controller.
- the patient support apparatus further comprises a second patient support zone comprising a plurality of inflatable support bladders.
- the second patient support zone is movable relative to the first patient support zone.
- a patient support apparatus comprises an air supply, a first patient support zone comprising an air fluidization therapy bed, a second patient support zone comprising a plurality of inflatable support bladders, and a micro-climate assembly coupled to the second portion.
- the air fluidization therapy bed includes a fluidization space and a fluidizable medium positioned in the fluidization space.
- the air fluidization therapy bed receives a flow of pressurized air from the air supply.
- the flow of pressurized air is operable to fluidize the fluidizable medium.
- the micro-climate assembly includes an upper layer of vapor permeable material and a lower layer coupled to the upper layer to define a chamber having an inlet and an outlet.
- the chamber defines an interior space.
- a three dimensional material is positioned in the interior space.
- the micro-climate assembly is coupled to the air supply to selectively receive a flow of pressurized air from the air supply. The flow of air enters the chamber through the inlet and exiting the chamber through the outlet.
- the patient support apparatus includes a first conduit from the air supply to the air fluidization therapy bed.
- the patient support apparatus further comprises a valve coupled to the first conduit and a second conduit coupled to the valve, the second conduit coupled to the mircro-climate assembly.
- the patient support apparatus further comprises a controller operable to control the valve to selectively direct a flow of air from the air supply to the micro-climate assembly.
- the patient support apparatus further includes a sonic emitter operable to impart a percussive force to a patient supported on the patient support apparatus.
- the patient support apparatus further includes a garment coupled to the air supply, the garment including a plurality of chambers, each chamber including a vent and positioned to impart a percussive force to a the body of a patient wearing the garment when the chamber is inflated.
- the patient support apparatus further includes a percussion assembly coupled to the second portion, the percussion assembly including a plurality of chambers, each chamber including a vent and positioned to impart a percussive force to a body supported on the second portion when the chamber is inflated.
- a patient support apparatus 10 illustratively embodied as an air fluidized therapy bed, includes a surface 12 on which a patient who has highly compromised skin may be positioned to receive therapy is shown in Fig. 1 .
- the patient support apparatus 10 includes a lower frame 16 that supports a tank 14, the tank 14 supports a fluidized air bed covered by a filter sheet 24.
- the filter sheet 24 is configured to allow air to pass through the filter sheet 24 while containing fluidizable medium 28, embodied as silica beads, within the tank 14.
- the patient support apparatus 10 includes a head end 34 and a foot end 32.
- the lower frame 16 is supported on a plurality of casters 20 which facilitate movement of the patient support apparatus 10 over a floor.
- the lower frame 16 supports an upper frame 18 upon which the tank 14 is mounted.
- the perimeter structure may be an inflatable bladder.
- An air supply 30 is supported on the lower frame 16 and provides a high volume of pressurized air to the tank 14 to fluidize the fluidizable medium 28 as will be discussed in further detail below.
- the air supply 30 is pneumatically coupled to an inlet 58 which conveys the air from the air supply 30 into a space 48 formed between a tub bottom 56 and a diffuser 50.
- the space 49 acts as a manifold so that air transferred into the space 48 is evenly distributed throughout the space 48 and urged through the diffuser 50.
- air flows through the diffuser 50 into the fluidizable medium 28 and creates an air fluidized bed for supporting a patient 36.
- the filter sheet 24 further limits the flow of air so that the patient 36 "floats" on the air fluidized therapy bed 10.
- Air fluidization therapy (AFT) spreads the weight of the patient 36 over the surface 12 and reduces the interface pressure experienced by the patient's skin on the AFT bed 10.
- the AFT bed 10 further includes a pulsator 52 which is operable to generate independent pulse waves 60 through the fluidized bed to deliver percussion and/or vibration therapy to a patient supported on the AFT bed 10.
- the tank 14 includes a tank base 42, a tank liner 40, a tank bladder 44, and the filter sheet 24 as shown in Fig. 2 .
- the tank base 42 and the tank liner 40 are made of a low or substantially no air-loss material, such as, for example, a polyurethane-backed nylon fabric material, and the tank bladder 44 is composed of a substantially no air loss polymeric material and filled with a fluid, such as, air.
- the tank base 42 is coupled to the upper frame 18 by tank fasteners (not shown) and includes the inlet 58 that couples to the air supply 30.
- the tank liner 40 and the tank bladder 44 are coupled together to form the sides of the tank 14.
- the tank base 42 is coupled with the tank liner 40 and the tank bladder 44 to define an opening 26 arranged to open into the tank 14 as shown in Fig. 2 .
- the filter sheet 24 is positioned over the opening 26 and is coupled to the tank liner 40 as shown in Fig. 2 .
- the filter sheet 24 is coupled to the tank liner 40 by fasteners which may be zippers, buttons, snaps, turn-buttons, hook and loop fasteners, or any other suitable alternative.
- the tank base 42, the tank liner 40, the tank bladder 44, and the filter sheet 24 cooperate to define the space 48 therebetween that contains the fluidizable medium 28.
- the filter sheet 24 is configured to allow fluid, such as, bodily fluids and air, to pass therethrough while preventing the fluidizable medium 28 from passing through.
- the filter sheet 24 is also configured to provide sufficient support to minimize or eliminating hammocking from occurring when a patient 36 is supported by the fluidized fluidizable medium 28 so that the patient 36 is properly supported.
- the diffuser 50 is configured to support the fluidizable medium 28 thereon and provide substantially uniform fluid flow to the fluidizable medium 28 from the air supply 30 as suggested, for example, in Fig. 2 .
- Air supplied by the air supply 30 passes through the diffuser 50 and into the fluidizable medium 28 to cause the fluidizable medium 28 to become fluidized.
- Further disclosure of an air fluidization therapy bed may be found in U.S. Application No. 13/246,886, , filed September 28, 2011 and entitled SYSTEMS, METHODS, AND DEVICES FOR FLUIDIZING A FLUIDIZABLE MEDIUM, which is incorporated in its entirety by reference herein.
- the pulsator 52 receives air from the air supply 30 through a tap 62 from a conduit 64 between the air supply 30 and the inlet 58.
- the pulsator 52 includes a quick acting valve that opens and closes very quickly.
- the flow path through a conduit 66 from the tap 62 to the inlet 49 has a first diameter that tends to limit flow from the air supply 30 into the space 48.
- a conduit 68 from the tap 62 to the pulsator 52 allows for a higher flow of air to pass therethrough and to the pulsator 52.
- the pulsator 52 under the control of a controller 70 as shown in the block diagram in Fig.
- Percussion therapy may be achieved by providing large bursts at a lower frequency, while vibration is imparted with small bursts at a high frequency. Generally, the range of frequencies may be varied from 1 to 20 Hz.
- the AFT bed 10 includes the controller 70 that operates both the pulsator 52 and the air supply 30.
- the air supply 30 includes a variable speed blower 72 that is operable to vary the volume of air flowing through the conduit 64, under the control of a processor 74 which is in communication with a memory device 75, the memory device 75 including instructions that, when executed by the processor 74 causes the processor 74 to control operation of the patient support apparatus 10.
- the AFT bed 10 includes a user interface 76 that includes a display 78 and a plurality of user inputs 80 that are operable to change the operation of the AFT bed 10. For example, a user may choose to activate the pulsator 52 and may choose a frequency, magnitude, and duration of the percussion/vibration therapy.
- a user may vary the speed of the blower 72 to adjust the fluidization of the fluidizable medium 28.
- the user interface 76 includes a touchscreen 79 that also includes the user inputs 80 on the display.
- the display 78 may be a simple mulit-segment LED display and the user inputs 80 may be discrete buttons or switches.
- a patient support apparatus 110 is illustratively embodied as a therapeutic bed that includes a first portion 112 that provides AFT to the lower body of a patient supported on the patient support apparatus 110.
- the first portion 112 is constructed similarly to the embodiment of Figs. 1-3 , with the first portion 112 being sized to support the lower body of a patient.
- a second portion 114 is configured to support the upper body of the patient supported on the patient support apparatus 110.
- the second portion 114 includes a plurality of bladders 130 that are inflated to a pressure which is optimized to reduce the incidence of the development of decubitus ulcers, also known as bedsores.
- the patient support apparatus 110 of the present disclosure includes a lower frame 120 supported on a plurality of casters 122.
- a lift system 118 is coupled to the lower frame 120 and supports an upper frame 116.
- the first portion 112 is fixed and maintained in a horizontal position by the upper frame 116.
- the second portion 114 is supported on the upper frame 116 and is pivotable relative to the upper frame 116 and the first portion 112 to increase the elevation of the head and upper body of a patient supported on the patient support apparatus 110.
- the present disclosure includes embodiments that deliver additional therapies, generally pulmonary therapies, to patients who are candidates for air fluidized therapy.
- the second portion 114 includes a sonic emitter 134 which is positioned below the bladders 130 and operable to generate sonic pulses that travel through the bladders 130 and impart a percussive or vibrational force to the upper body of a patient 36 supported on the second portion 114 of patient support apparatus 110.
- the patient support apparatus 110 includes a controller 126 that has processor 142 in communication with a memory device 144, the controller 126 is operable to control all of the operations of the patient support apparatus 110.
- Patient support apparatus 110 also includes a user interface 139 that has a graphical display screen 140 and a number of user inputs 150 as will be described in further detail below.
- the user interface 139 may optionally include a touchscreen 141 that acts as both the graphical display screen 140 and user inputs 150.
- the controller 126 is operable to control a fluid supply 124 that generates a flow of air similar to the manner described above with reference to the patient support apparatus 10.
- the controller 126 also controls a sonic controller 128 which is operable to drive the sonic emitter 134 to generate sonic waves through the bladders 130 which then impinge upon the upper body of a patient supported on the second portion 114.
- the sonic controller 128 includes a frequency generator 152 and an amplifier 154. A user is able to select a particular percussive or vibration therapy from the user interface 139 which controls the magnitude and frequency of the sonic pulses from the sonic emitter 134.
- the patient support apparatus 110 includes a head deck section 160 that is pivotably coupled to the upper frame 116 of the patient support apparatus 110 and pivotable about an axis 162.
- the sonic emitter 134 is fixed to the head deck section 160 such that sonic energy is transferred through the head deck section 160 into the bladders 130.
- the sonic energy, in the form of sonic waves 164 travel through the bladders 130 to impact the patient 36. As depicted in Fig.
- the sonic emitter 134 is embodied as a traditional speaker including a body 166, a driver 168 that includes a coil and permanent magnet, the coil is coupled to a diaphragm 170 that moves relative to the body 166 to create the waves 164.
- the sonic emitter 134 Being coupled to the head deck section 160, the sonic emitter 134 moves with the head deck section 160 as it pivots about the axis 162.
- percussion and/or vibration therapy may be delivered to the patient 36 as the head deck section 160 moves between a lowered position as shown in Fig. 6 and a raised position as shown in Fig. 7 .
- a patient support apparatus 210 is similar to the patient support apparatus 110, but the sonic controller and sonic emitter are omitted.
- the patient support apparatus 210 includes a head deck section 212 which is pivotably coupled to an upper frame 116 and pivotable about an axis 216.
- the patient support apparatus 210 has a different second portion 214 from second portion 114 of patient support apparatus 110 in that patient support apparatus 210 includes a percussion and vibration bladder assembly 220 that is supported on the top of the bladders 130.
- the percussion and vibration bladder assembly 220 includes five chambers 222, 224, 226, 228, and 230, each of which is coupled to a respective conduit 232, 234, 236, 238, 240 which are fed from a manifold 242.
- the manifold 242 is in communication with the air supply 30 of the patient support apparatus 210.
- the air supply 30 provides a flow of air to the first portion 112 of the patient support apparatus 210.
- the manifold 242 includes a number of valves 262, 264, 266, 268, 270 (shown in Fig. 10 ) which operate similarly to the pulsator 52.
- the respective valves 262, 264, 266, 268, 270 of the manifold 242 are under the control of a percussion/vibration controller 244.
- the patient support apparatus 210 includes a controller 246 similar to the controller 126 and configured to control the patient support apparatus 210, but the sonic controller 128 is omitted and replaced with the percussion/vibration controller 244.
- the percussion/vibration controller 244 is operable to control the operation of each of five valves independently so that the percussion and vibration therapy delivered to the patient 36 may be tailored to specific needs based on inputs from a user through the user interface 139.
- each conduit 232, 234, 236, 238, 240 is associated with a respective valve that is openable to allow air to flow into the respective chambers 222, 224, 226, 228, and 230.
- Each chamber 222, 224, 226, 228, and 230 is vented to atmosphere such that a burst of air into a chamber 222, 224, 226, 228, and 230 will expand the chamber 222, 224, 226, 228, or 230.
- the vents of the chambers 222, 224, 226, 228, and 230 are sized to constrict flow through the 222, 224, 226, 228, or 230 so that the chamber 222, 224, 226, 228, or 230 is rapidly expanded, thereby imparting a force onto the upper body of the patient 36.
- closing of the respective valve causes the respective chambers to deflate back to the deflated state shown in Fig. 9 .
- the chambers 224 and 228 are shown in an expanded state in Fig. 9 . This continued expansion and deflation of the chambers 222, 224, 226, 228, and 230 provides the percussive or vibrational therapy to the patient 36.
- high frequency chest wall oscillation (HFCWO) therapy is delivered to a patient 36 supported on or adjacent to a patient support apparatus 310 through a garment 320 that is worn by the patient 36.
- the garment 320 includes chambers 322 and 324 that are inflatable similar to the chambers 222, 224, 226, 228, and 230 discussed above with reference to the patient support apparatus 210.
- the patient support apparatus 310 includes the percussion/vibration controller 244 and a manifold 342 that includes two valves 360 and 362 to control the flow of air through two conduits 326 and 328 to provide air pulses to the chambers 322 and 324 of the garment 320.
- a controller 316 similar to controller 246 but programmed to control the HFCWO therapy of the patient support apparatus 310 allows a user to utilize a user interface 318 to control the operation of the HFCWO therapy of the patient support apparatus 310.
- the garment 320 causes high frequency chest wall oscillation of the patient, which is known to help with relieving pulmonary congestion, such as that experienced by those who suffer from cystic fibrosis.
- the garment 320 and the percussion/vibration controller 244 function similarly to the apparatus disclosed in U.S. Patent Application Publication No. 2011/0087143 , entitled “THREE-DIMENSIONAL LAYER FOR A GARMENT OF A HFCWO SYSTEM” which is incorporated by reference herein in its entirety.
- a patient support apparatus 410 includes a second portion 414 that includes the bladders 130, but further includes a micro-climate management assembly 416 which is positioned on top of the bladders 130 and operable to assist in the cooling and removal of moisture from the upper body of a patient 36 supported on the patient support apparatus 410.
- the micro-climate management assembly 416 includes an upper layer 418 that comprises a urethane coated nylon ticking material that is air impermeable but vapor permeable.
- the upper layer 418 permits moisture, such as sweat, to permeate into an interior space 420 which includes a second layer 426 that comprises a three-dimensional spacer material that is sufficiently porous to permit air to flow therethrough.
- a third layer 429 is coupled to the upper layer 418 to enclose the interior space 420.
- the inlet 422 also comprises urethane coated nylon ticking material that is air impermeable but vapor permeable and is positioned between the bladders 130 and the first portion 112 of the patient support apparatus 410.
- the inlet 422 is a pliable material and is not prone to pinching or reduced flow due to mechanical interferences.
- the flow to the micro-climate management assembly 416 is controlled by a controller 430 as shown in Fig. 15.
- the micro-climate management assembly 416 includes a diverter valve 434 that is positioned in a conduit 444 that conveys air from the air supply 30 to the inlet 49 of the first portion 112. Based on inputs from a user to a user interface 436, the diverter valve 434 may be engaged to divert a portion of the air flow from the air supply 30 to the micro-climate management assembly 416.
- the patient support apparatus 410 may further include an air conditioner 440, shown in broken lines in Fig. 15, to condition the air from the air supply 30 to change the temperature or to remove fluid from the air. Conditioning of the air assists with reducing the temperature of the surface
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Abstract
Description
- The present disclosure is related to patient support apparatuses that provide air fluidized therapy. More specifically, the present disclosure is related to patient support apparatuses that provide air fluidized therapy and additional therapies utilizing the functionality of the air fluidized therapy system of the patient support apparatus.
- Patient support apparatuses that provide air fluidized therapy are well known in the art and are considered to be a specialized use device that supports at least a portion of the patient on the air fluidized section when the patient has highly compromised skin. For example burn patients, severe diabetics, or compromised elderly patients may be supported on the air fluidized therapy which has been shown to help reduce further injury and promote healing of the compromised skin. In general, patient support apparatuses that provide air fluidized therapy do not provide other therapies may be found in beds or mattresses that do not provide air fluidized therapy.
- The present application discloses one or more of the features recited in the appended claims and/or the following features which, alone or in any combination, may comprise patentable subject matter:
- According to a first aspect of the present disclosure, a patient support apparatus comprises an air supply, an air fluidization therapy bed, and a pulsator coupled to the air fluidization therapy bed. The air fluidization therapy bed includes a fluidization space and a fluidizable medium positioned in the fluidization space. The air fluidization therapy bed receives a flow of pressurized air from the air supply. The flow of pressurized air is operable to fluidize the fluidizable medium. The pulsator is positioned to transmit air pulses through the fluidized fluidizable medium to impart a percussive force to a body supported on air fluidization therapy bed.
- In some embodiments, the pulsator is in fluid communication with the air supply and operable to form air pulses from at least a portion of the flow from the air supply.
- In some embodiments, the frequency and magnitude of the air pulses are variable.
- In some embodiments, the patient support apparatus further comprises a percussion/vibration controller operable to control the operation of the pulsator.
- In some embodiments, the patient support apparatus further comprises a controller and a user interface, the user interface isoperable to receive inputs from a user indicative of at least one desired operating parameter of the percussion/vibration controller, the controller operable to modify the operation of the percussion/vibration controller to achieve the desired operating parameter.
- In some embodiments, the patient support apparatus comprises a first conduit, a tap coupled to the first conduit, a second conduit coupled to the tap and the pulsator, a third conduit coupled to the tap and the air fluidization therapy bed, the third conduit smaller than the first conduit and the second conduit.
- In some embodiments, the pulsator comprises a valve that is openable to allow air to flow through the second conduit and the valve of the pulsator. In some embodiments, the valve of the pulsator is in communication with the space of the air fluidization therapy bed such that when the valve opens, air flows through the valve into the space. In some embodiments, the valve opens and closes to create air pulses in the space of the air fluidization therapy bed.
- In some embodiments, the air supply has a variable output, the output being modified to compensate for the flow of air used to provide the percussive forces.
- According to another aspect of the present disclosure, a patient support apparatus comprises an air supply, a first patient support zone comprising an air fluidization therapy bed, a second patient support zone comprising a plurality of inflatable support bladders, and a sonic emitter. The first patient support zone includes a fluidization space and a fluidizable medium positioned in the fluidization space. The air fluidization therapy bed receives a flow of pressurized air from the air supply. The flow of pressurized air is operable to fluidize the fluidizable medium. The sonic emitter is coupled to the second portion and positioned to transmit sonic waves through the bladers to impart a percussive force to a body supported on the second portion.
- In some embodiments, the sonic emitter has a variable frequency and amplitude.
- In some embodiments, the patient support apparatus further comprises a sonic controller operable to control the frequency and amplitude of the sonic emitter.
- In some embodiments, the patient support apparatus further includes a controller operable to control the fluid supply and the sonic controller.
- In some embodiments, the patient support apparatus further includes a user interface, the user interface operable to accept a user input indicative of a desired operating parameter of the sonic emitter.
- In some embodiments, the controller modifies operation of the sonic controller to achieve the desired operating parameter of the sonic emitter.
- In some embodiments, the second patient support zone is movable relative to the first patient support zone.
- In some embodiments, the sonic emitter is coupled to the second patient support zone to move therewith.
- According to yet another aspect of the present disclosure, a patient support apparatus comprises an air supply, a first patient support zone comprising an air fluidization therapy bed, a second patient support zone comprising a plurality of inflatable support bladders, and a percussion assembly. The first patient support zone comprises a fluidization space and a fluidizable medium positioned in the fluidization space. The air fluidization therapy bed receives a flow of pressurized air from the air supply. The flow of pressurized air is operable to fluidize the fluidizable medium. The percussion assembly is coupled to the second portion. The percussion assembly includes a plurality of chambers. Each chamber includes a vent and is positioned to impart a percussive force to a body supported on the second portion when the chamber is inflated.
- In some embodiments, the patient support apparatus further comprises a plurality of conduits, each conduit coupled to a respective chamber. In some embodiments, the patient support apparatus comprises a plurality of valves, each valve associated with one of the conduits coupled to a respective chamber. In some embodiments, the patient support apparatus includes a percussion/vibration controller that is operable to control the operation of the valves to selectively inflate the chambers. In some embodiments, the valves are coupled to the air supply such that opening of one of the plurality of valves permits a flow of air from the air supply to a respective chamber. In some embodiments, the vents of the chambers are sized such that they constrict flow out of each chamber, and wherein the flow of the air from the air supply is sufficient to rapidly expand the chamber when a valve is opened, the vent allowing the expanded chamber to contract when the valve is closed.
- In some embodiments, the patient support apparatus further comprises a percussion/vibration controller operable to control the frequency and amplitude of the inflations of the chambers.
- In some embodiments, the patient support apparatus further includes a controller operable to control the fluid supply and the percussion/vibration controller.
- In some embodiments, the patient support apparatus further includes a user interface, the user interface operable to accept a user input indicative of a desired operating parameter of the percussion/vibration controller.
- In some embodiments, the controller modifies operation of the percussion/vibration controller to achieve the desired operating parameter of the percussion/vibration controller.
- In some embodiments, the second patient support zone is movable relative to the first patient support zone.
- In some embodiments, the percussion assembly is coupled to the second patient support zone to move therewith.
- According to still another aspect of the present disclosure, a patient support apparatus comprises an air supply, a first patient support zone comprising an air fluidization therapy bed, and a garment coupled to the air supply. The air fluidization therapy bed includes a fluidization space and a fluidizable medium positioned in the fluidization space. The air fluidization therapy bed receives a flow of pressurized air from the air supply. The flow of pressurized air is operable to fluidize the fluidizable medium. The garment includes a plurality of chambers. Each chamber includes a vent. Each chamber is positioned to impart a percussive force to a the body of a patient wearing the garment when a chamber is inflated.
- In some embodiments, the patient support apparatus further comprises a plurality of conduits, each conduit coupled to a respective chamber.
- In some embodiments, the patient support apparatus comprises a plurality of valves, each valve associated with one of the conduits coupled to a respective chamber.
- In some embodiments, the patient support apparatus includes a percussion/vibration controller that is operable to control the operation of the valves to selectively inflate the chambers.
- In some embodiments, the valves are coupled to the air supply such that opening of one of the plurality of valves permits a flow of air from the air supply to a respective chamber.
- In some embodiments, the vents of the chambers are sized such that they constrict flow out of each chamber, and wherein the flow of the air from the air supply is sufficient to rapidly expand the chamber when a valve is opened, the vent allowing the expanded chamber to contract when the valve is closed.
- In some embodiments, the patient support apparatus further comprises a percussion/vibration controller operable to control the frequency and amplitude of the inflations of the chambers.
- In some embodiments, the patient support apparatus further includes a controller operable to control the fluid supply and the percussion/vibration controller.
- In some embodiments, the patient support apparatus further includes a user interface, the user interface operable to accept a user input indicative of a desired operating parameter of the percussion/vibration controller.
- In some embodiments, the controller modifies operation of the percussion/vibration controller to achieve the desired operating parameter of the percussion/vibration controller.
- In some embodiments, the patient support apparatus further comprises a second patient support zone comprising a plurality of inflatable support bladders.
- In some embodiments, the second patient support zone is movable relative to the first patient support zone.
- According to still another aspect of the present disclosure, a patient support apparatus comprises an air supply, a first patient support zone comprising an air fluidization therapy bed, a second patient support zone comprising a plurality of inflatable support bladders, and a micro-climate assembly coupled to the second portion. The air fluidization therapy bed includes a fluidization space and a fluidizable medium positioned in the fluidization space. The air fluidization therapy bed receives a flow of pressurized air from the air supply. The flow of pressurized air is operable to fluidize the fluidizable medium. The micro-climate assembly includes an upper layer of vapor permeable material and a lower layer coupled to the upper layer to define a chamber having an inlet and an outlet. The chamber defines an interior space. A three dimensional material is positioned in the interior space. The micro-climate assembly is coupled to the air supply to selectively receive a flow of pressurized air from the air supply. The flow of air enters the chamber through the inlet and exiting the chamber through the outlet.
- In some embodiments, the patient support apparatus includes a first conduit from the air supply to the air fluidization therapy bed.
- In some embodiments, the patient support apparatus further comprises a valve coupled to the first conduit and a second conduit coupled to the valve, the second conduit coupled to the mircro-climate assembly.
- In some embodiments, the patient support apparatus further comprises a controller operable to control the valve to selectively direct a flow of air from the air supply to the micro-climate assembly.
- In some embodiments, the patient support apparatus further includes a sonic emitter operable to impart a percussive force to a patient supported on the patient support apparatus.
- In some embodiments, the patient support apparatus further includes a garment coupled to the air supply, the garment including a plurality of chambers, each chamber including a vent and positioned to impart a percussive force to a the body of a patient wearing the garment when the chamber is inflated.
- In some embodiments, the patient support apparatus further includes a percussion assembly coupled to the second portion, the percussion assembly including a plurality of chambers, each chamber including a vent and positioned to impart a percussive force to a body supported on the second portion when the chamber is inflated.
- Additional features, which alone or in combination with any other feature(s), including those listed above and those listed in the claims, may comprise patentable subject matter and will become apparent to those skilled in the art upon consideration of the following detailed description of illustrative embodiments exemplifying the best mode of carrying out the invention as presently perceived.
- The invention will now be further described by way of example only, with reference to the accompanying drawings, in which:
-
Fig. 1 is a perspective view of a patient support apparatus that includes an air fluidized therapy bed and a pulsator for delivery a percussive force to the body of a patient supported on a surface of the patient support apparatus; -
Fig. 2 is a cross-sectional view of a portion of the patient support apparatus ofFig. 1 with a patient supported on a surface of the air fluidized therapy bed; -
Fig. 3 is a block diagram of the control system of the patient support apparatus ofFig. 1 ; -
Fig. 4 is a perspective view of another embodiment of a patient support apparatus that includes a first section that includes an air fluidized therapy bed similar to the embodiment ofFig. 1 and a second portion that includes a plurality of bladders for supporting a portion of a patient; -
Fig. 5 is a block diagram of the control system of the patient support apparatus ofFig. 4 ; -
Fig. 6 is a side view of the second portion of the patient support apparatus ofFig. 4 , the second portion in a first orientation; -
Fig. 7 is a side view similar toFig. 6 , the second portion in a second orientation; -
Fig. 8 is a side view of another embodiment of a second portion of a patient support apparatus similar to the embodiment ofFig. 4 , the second portion including a percussion assembly in a first orientation; -
Fig. 9 is a side view of similar toFig. 8 , the second portion including a percussion assembly in a second orientation; -
Fig. 10 is a block diagram of the control system of the embodiment of patient support apparatus ofFigs. 8 and 9 ; -
Fig. 11 is a partially diagrammatic view of another embodiment of a patient support apparatus that includes first section that includes an air fluidized therapy bed and further includes a garment that is operable to deliver high frequency chest wall oscillation (HFCWO) to a patient, the garment receiving pressurized air from an air supply that also provides pressurized air to the air fluidized therapy bed; and -
Fig. 12 is a partially diagrammatic view of another embodiment of a patient support apparatus including a side view a second portion of the patient support apparatus that includes a first portion that includes an air fluidized therapy bed, the second portion further including a micro-climate assembly supported on a set of bladders of the second portion. - A
patient support apparatus 10, illustratively embodied as an air fluidized therapy bed, includes asurface 12 on which a patient who has highly compromised skin may be positioned to receive therapy is shown inFig. 1 . Thepatient support apparatus 10 includes alower frame 16 that supports atank 14, thetank 14 supports a fluidized air bed covered by afilter sheet 24. Thefilter sheet 24 is configured to allow air to pass through thefilter sheet 24 while containing fluidizable medium 28, embodied as silica beads, within thetank 14. - The
patient support apparatus 10 includes ahead end 34 and afoot end 32. Thelower frame 16 is supported on a plurality ofcasters 20 which facilitate movement of thepatient support apparatus 10 over a floor. Thelower frame 16 supports anupper frame 18 upon which thetank 14 is mounted. In other embodiments, the perimeter structure may be an inflatable bladder. Anair supply 30 is supported on thelower frame 16 and provides a high volume of pressurized air to thetank 14 to fluidize the fluidizable medium 28 as will be discussed in further detail below. - Referring now to
Fig. 2 , theair supply 30 is pneumatically coupled to aninlet 58 which conveys the air from theair supply 30 into aspace 48 formed between a tub bottom 56 and adiffuser 50. Thespace 49 acts as a manifold so that air transferred into thespace 48 is evenly distributed throughout thespace 48 and urged through thediffuser 50. When the pressure in thespace 49 becomes excessive, air flows through thediffuser 50 into the fluidizable medium 28 and creates an air fluidized bed for supporting apatient 36. Thefilter sheet 24 further limits the flow of air so that the patient 36 "floats" on the airfluidized therapy bed 10. Air fluidization therapy (AFT) spreads the weight of the patient 36 over thesurface 12 and reduces the interface pressure experienced by the patient's skin on theAFT bed 10. - Because patients who require AFT tend to be quite ill and in a highly compromised state, they often require other therapeutic treatments beyond the AFT available on the
AFT bed 10. In the illustrative embodiment ofFig. 2 , theAFT bed 10 further includes apulsator 52 which is operable to generate independent pulse waves 60 through the fluidized bed to deliver percussion and/or vibration therapy to a patient supported on theAFT bed 10. - The
tank 14 includes atank base 42, atank liner 40, atank bladder 44, and thefilter sheet 24 as shown inFig. 2 . In one illustrative embodiment, thetank base 42 and thetank liner 40 are made of a low or substantially no air-loss material, such as, for example, a polyurethane-backed nylon fabric material, and thetank bladder 44 is composed of a substantially no air loss polymeric material and filled with a fluid, such as, air. Thetank base 42 is coupled to theupper frame 18 by tank fasteners (not shown) and includes theinlet 58 that couples to theair supply 30. Thetank liner 40 and thetank bladder 44 are coupled together to form the sides of thetank 14. Thetank base 42 is coupled with thetank liner 40 and thetank bladder 44 to define anopening 26 arranged to open into thetank 14 as shown inFig. 2 . - The
filter sheet 24 is positioned over theopening 26 and is coupled to thetank liner 40 as shown inFig. 2 . Thefilter sheet 24 is coupled to thetank liner 40 by fasteners which may be zippers, buttons, snaps, turn-buttons, hook and loop fasteners, or any other suitable alternative. Thetank base 42, thetank liner 40, thetank bladder 44, and thefilter sheet 24 cooperate to define thespace 48 therebetween that contains thefluidizable medium 28. Thefilter sheet 24 is configured to allow fluid, such as, bodily fluids and air, to pass therethrough while preventing the fluidizable medium 28 from passing through. Thefilter sheet 24 is also configured to provide sufficient support to minimize or eliminating hammocking from occurring when apatient 36 is supported by the fluidized fluidizable medium 28 so that thepatient 36 is properly supported. - The
diffuser 50 is configured to support the fluidizable medium 28 thereon and provide substantially uniform fluid flow to the fluidizable medium 28 from theair supply 30 as suggested, for example, inFig. 2 . Air supplied by theair supply 30 passes through thediffuser 50 and into the fluidizable medium 28 to cause the fluidizable medium 28 to become fluidized. Further disclosure of an air fluidization therapy bed may be found inU.S. Application No. 13/246,886, , filed September 28, 2011 - The
pulsator 52 receives air from theair supply 30 through atap 62 from aconduit 64 between theair supply 30 and theinlet 58. Thepulsator 52 includes a quick acting valve that opens and closes very quickly. The flow path through aconduit 66 from thetap 62 to theinlet 49 has a first diameter that tends to limit flow from theair supply 30 into thespace 48. Aconduit 68 from thetap 62 to thepulsator 52 allows for a higher flow of air to pass therethrough and to thepulsator 52. Thepulsator 52, under the control of acontroller 70 as shown in the block diagram inFig. 3 , is operated to allow bursts of air to flow into thetank 14, the bursts of air traveling through thetank 14 to impinge upon the upper body of thepatient 36. By controlling the duration of time that the valve of thepulsator 52 is open, the magnitude of the air bursts can be varied. In addition, modification of the time between valve openings controls the frequency of the bursts or pulses. Percussion therapy may be achieved by providing large bursts at a lower frequency, while vibration is imparted with small bursts at a high frequency. Generally, the range of frequencies may be varied from 1 to 20 Hz. - The
AFT bed 10 includes thecontroller 70 that operates both thepulsator 52 and theair supply 30. Theair supply 30 includes avariable speed blower 72 that is operable to vary the volume of air flowing through theconduit 64, under the control of aprocessor 74 which is in communication with amemory device 75, thememory device 75 including instructions that, when executed by theprocessor 74 causes theprocessor 74 to control operation of thepatient support apparatus 10. In addition, theAFT bed 10 includes auser interface 76 that includes adisplay 78 and a plurality ofuser inputs 80 that are operable to change the operation of theAFT bed 10. For example, a user may choose to activate thepulsator 52 and may choose a frequency, magnitude, and duration of the percussion/vibration therapy. In addition, a user may vary the speed of theblower 72 to adjust the fluidization of thefluidizable medium 28. In the illustrative embodiment, theuser interface 76 includes atouchscreen 79 that also includes theuser inputs 80 on the display. In other embodiments, thedisplay 78 may be a simple mulit-segment LED display and theuser inputs 80 may be discrete buttons or switches. - In another embodiment shown in
Fig. 4 , apatient support apparatus 110 is illustratively embodied as a therapeutic bed that includes afirst portion 112 that provides AFT to the lower body of a patient supported on thepatient support apparatus 110. Thefirst portion 112 is constructed similarly to the embodiment ofFigs. 1-3 , with thefirst portion 112 being sized to support the lower body of a patient. Asecond portion 114 is configured to support the upper body of the patient supported on thepatient support apparatus 110. Thesecond portion 114 includes a plurality ofbladders 130 that are inflated to a pressure which is optimized to reduce the incidence of the development of decubitus ulcers, also known as bedsores. Thepatient support apparatus 110 of the present disclosure includes alower frame 120 supported on a plurality ofcasters 122. Alift system 118 is coupled to thelower frame 120 and supports anupper frame 116. Thefirst portion 112 is fixed and maintained in a horizontal position by theupper frame 116. Thesecond portion 114 is supported on theupper frame 116 and is pivotable relative to theupper frame 116 and thefirst portion 112 to increase the elevation of the head and upper body of a patient supported on thepatient support apparatus 110. - The present disclosure includes embodiments that deliver additional therapies, generally pulmonary therapies, to patients who are candidates for air fluidized therapy. In the embodiment shown in
Figs. 4-7 , thesecond portion 114 includes asonic emitter 134 which is positioned below thebladders 130 and operable to generate sonic pulses that travel through thebladders 130 and impart a percussive or vibrational force to the upper body of a patient 36 supported on thesecond portion 114 ofpatient support apparatus 110. - Referring to
Fig. 5 , thepatient support apparatus 110 includes acontroller 126 that hasprocessor 142 in communication with amemory device 144, thecontroller 126 is operable to control all of the operations of thepatient support apparatus 110.Patient support apparatus 110 also includes auser interface 139 that has agraphical display screen 140 and a number ofuser inputs 150 as will be described in further detail below. Theuser interface 139 may optionally include atouchscreen 141 that acts as both thegraphical display screen 140 anduser inputs 150. Thecontroller 126 is operable to control a fluid supply 124 that generates a flow of air similar to the manner described above with reference to thepatient support apparatus 10. - The
controller 126 also controls asonic controller 128 which is operable to drive thesonic emitter 134 to generate sonic waves through thebladders 130 which then impinge upon the upper body of a patient supported on thesecond portion 114. Thesonic controller 128 includes afrequency generator 152 and anamplifier 154. A user is able to select a particular percussive or vibration therapy from theuser interface 139 which controls the magnitude and frequency of the sonic pulses from thesonic emitter 134. - Referring now to
Figs. 6 and 7 , thepatient support apparatus 110 includes ahead deck section 160 that is pivotably coupled to theupper frame 116 of thepatient support apparatus 110 and pivotable about anaxis 162. Thesonic emitter 134 is fixed to thehead deck section 160 such that sonic energy is transferred through thehead deck section 160 into thebladders 130. The sonic energy, in the form ofsonic waves 164 travel through thebladders 130 to impact thepatient 36. As depicted inFig. 7 , thesonic emitter 134 is embodied as a traditional speaker including abody 166, adriver 168 that includes a coil and permanent magnet, the coil is coupled to adiaphragm 170 that moves relative to thebody 166 to create thewaves 164. - Being coupled to the
head deck section 160, thesonic emitter 134 moves with thehead deck section 160 as it pivots about theaxis 162. Thus, percussion and/or vibration therapy may be delivered to the patient 36 as thehead deck section 160 moves between a lowered position as shown inFig. 6 and a raised position as shown inFig. 7 . - In yet another embodiment, shown in
Figs. 8-10 , apatient support apparatus 210 is similar to thepatient support apparatus 110, but the sonic controller and sonic emitter are omitted. Thepatient support apparatus 210 includes ahead deck section 212 which is pivotably coupled to anupper frame 116 and pivotable about anaxis 216. Thepatient support apparatus 210 has a differentsecond portion 214 fromsecond portion 114 ofpatient support apparatus 110 in thatpatient support apparatus 210 includes a percussion andvibration bladder assembly 220 that is supported on the top of thebladders 130. The percussion andvibration bladder assembly 220 includes fivechambers respective conduit manifold 242. The manifold 242 is in communication with theair supply 30 of thepatient support apparatus 210. Theair supply 30 provides a flow of air to thefirst portion 112 of thepatient support apparatus 210. The manifold 242 includes a number ofvalves Fig. 10 ) which operate similarly to thepulsator 52. - Referring to the block diagram of
Fig. 10 , therespective valves vibration controller 244. Thepatient support apparatus 210 includes acontroller 246 similar to thecontroller 126 and configured to control thepatient support apparatus 210, but thesonic controller 128 is omitted and replaced with the percussion/vibration controller 244. The percussion/vibration controller 244 is operable to control the operation of each of five valves independently so that the percussion and vibration therapy delivered to the patient 36 may be tailored to specific needs based on inputs from a user through theuser interface 139. - In operation, each
conduit respective chambers chamber chamber chamber chambers chamber patient 36. After the rapid expansion, closing of the respective valve causes the respective chambers to deflate back to the deflated state shown inFig. 9 . Thechambers Fig. 9 . This continued expansion and deflation of thechambers patient 36. The action of the percussion and vibration system of thepatient support apparatus 210 is similar to that disclosed inU.S. Pat. No. 6,119,291 , entitled "PERCUSSION AND VIBRATION THERAPY APPARATUS, which is incorporated in its entirety be reference herein. - In still yet another embodiment shown in
Fig. 11 , high frequency chest wall oscillation (HFCWO) therapy is delivered to a patient 36 supported on or adjacent to apatient support apparatus 310 through agarment 320 that is worn by thepatient 36. Thegarment 320 includeschambers 322 and 324 that are inflatable similar to thechambers patient support apparatus 210. Thepatient support apparatus 310 includes the percussion/vibration controller 244 and a manifold 342 that includes twovalves conduits chambers 322 and 324 of thegarment 320. Acontroller 316, similar tocontroller 246 but programmed to control the HFCWO therapy of thepatient support apparatus 310 allows a user to utilize auser interface 318 to control the operation of the HFCWO therapy of thepatient support apparatus 310. - The
garment 320 causes high frequency chest wall oscillation of the patient, which is known to help with relieving pulmonary congestion, such as that experienced by those who suffer from cystic fibrosis. In some embodiments, thegarment 320 and the percussion/vibration controller 244 function similarly to the apparatus disclosed inU.S. Patent Application Publication No. 2011/0087143 , entitled "THREE-DIMENSIONAL LAYER FOR A GARMENT OF A HFCWO SYSTEM" which is incorporated by reference herein in its entirety. - In yet another embodiment, shown in
Fig. 12 , apatient support apparatus 410 includes asecond portion 414 that includes thebladders 130, but further includes amicro-climate management assembly 416 which is positioned on top of thebladders 130 and operable to assist in the cooling and removal of moisture from the upper body of a patient 36 supported on thepatient support apparatus 410. - The
micro-climate management assembly 416 includes anupper layer 418 that comprises a urethane coated nylon ticking material that is air impermeable but vapor permeable. Theupper layer 418 permits moisture, such as sweat, to permeate into aninterior space 420 which includes asecond layer 426 that comprises a three-dimensional spacer material that is sufficiently porous to permit air to flow therethrough. As air is introduced, under pressure, to aninlet 422 of themicro-climate management assembly 416, the air is urged through thesecond layer 426 in the direction of anarrow 424. The air flows through the second layer and moves moisture that has collected in theinterior space 420 through thesecond layer 426 an urges the air and moisture out of anoutlet 428. This action tends to cool the patient's skin and remove excess moisture, thereby reducing the potential for skin injury. Athird layer 429 is coupled to theupper layer 418 to enclose theinterior space 420. - The
inlet 422 also comprises urethane coated nylon ticking material that is air impermeable but vapor permeable and is positioned between thebladders 130 and thefirst portion 112 of thepatient support apparatus 410. Theinlet 422 is a pliable material and is not prone to pinching or reduced flow due to mechanical interferences. - The flow to the
micro-climate management assembly 416 is controlled by acontroller 430 as shown in Fig. 15. Themicro-climate management assembly 416 includes adiverter valve 434 that is positioned in aconduit 444 that conveys air from theair supply 30 to theinlet 49 of thefirst portion 112. Based on inputs from a user to auser interface 436, thediverter valve 434 may be engaged to divert a portion of the air flow from theair supply 30 to themicro-climate management assembly 416. In some embodiments, thepatient support apparatus 410 may further include anair conditioner 440, shown in broken lines in Fig. 15, to condition the air from theair supply 30 to change the temperature or to remove fluid from the air. Conditioning of the air assists with reducing the temperature of the surface - Further disclosure of a micro-climate assembly may be found in U.S.
Application No. PCT/US09/40661, filed April 15, 2009 and entitled MICROCLIMATE MANAGEMENT SYSTEM which is incorporated in its entirety by reference herein. - Although certain illustrative embodiments have been described in detail above, variations and modifications exist.
- Embodiments of the invention can be described with reference to the following numbered clauses, with preferred features laid out in the dependent clauses:
- 1. A patient support apparatus comprising
an air supply,
an air fluidization therapy bed including a fluidization space and a fluidizable medium positioned in the fluidization space, the air fluidization therapy bed receiving a flow of pressurized air from the air supply, the flow of pressurized air operable to fluidize the fluidizable medium, and
a pulsator coupled to the air fluidization therapy bed and positioned to transmit air pulses through the fluidized fluidizable medium to impart a percussive force to a body supported on air fluidization therapy bed. - 2. The patient support apparatus of clause 1, wherein the pulsator is in fluid communication with the air supply and operable to form air pulses from at least a portion of the flow from the air supply.
- 3. The patient support apparatus of clause 2, wherein the frequency and magnitude of the air pulses are variable.
- 4. The patient support apparatus of clause 3, wherein the patient support apparatus further comprises a percussion/vibration controller operable to control the operation of the pulsator.
- 5. The patient support apparatus of
clause 4, wherein the patient support apparatus further comprises a controller and a user interface, the user interface operable to receive inputs from a user indicative of at least one desired operating parameter of the percussion/vibration controller, the controller operable to modify the operation of the percussion/vibration controller to achieve the desired operating parameter. - 6. The patient support apparatus of clause 1, wherein the patient support apparatus comprises a first conduit, a tap coupled to the first conduit, a second conduit coupled to the tap and the pulsator, a third conduit coupled to the tap and the air fluidization therapy bed, the third conduit smaller than the first conduit and the second conduit.
- 7. The patient support apparatus of clause 6, wherein the pulsator comprises a valve that is openable to allow air to flow through the second conduit and the valve of the pulsator.
- 8. The patient support apparatus of clause 7, wherein the valve of the pulsator is in communication with the space of the air fluidization therapy bed such that when the valve opens, air flows through the valve into the space.
- 9. The patient support apparatus of clause 8, wherein the valve opens and closes to create air pulses in the space of the air fluidization therapy bed.
- 10. The patient support apparatus of clause 7, wherein the air supply has a variable output, the output being modified to compensate for the flow of air used to provide the percussive forces.
- 11. The patient support apparatus of clause 1, , wherein the air supply has a variable output, the output being modified to compensate for the flow of air used to provide the percussive forces.
- 12. A patient support apparatus comprising
an air supply,
a first patient support zone comprising an air fluidization therapy bed including a fluidization space and a fluidizable medium positioned in the fluidization space, the air fluidization therapy bed receiving a flow of pressurized air from the air supply, the flow of pressurized air operable to fluidize the fluidizable medium,
a second patient support zone comprising a plurality of inflatable support bladders, and
means for imparting a percussive force to a body supported on the second portion. - 13. The patient support of
clause 12, wherein the means for imparting a percussive force comprises a sonic emitter coupled to the second portion and positioned to transmit sonic waves through the bladders to impart a percussive force to a body supported on the second portion. - 14. The patient support of
clause 12, wherein the means for imparting a percussive force comprises a percussion assembly coupled to the second portion, the percussion assembly including a plurality of chambers, each chamber including a vent and positioned to impart a percussive force to a body supported on the second portion when the chamber is inflated. - 15. The patient support of
clause 12, wherein the means for imparting a percussive force comprises a garment coupled to the air supply, the garment including a plurality of chambers, each chamber including a vent and positioned to impart a percussive force to the body of a patient wearing the garment when the chamber is inflated. - 16. A patient support apparatus comprising
an air supply,
a first patient support zone comprising an air fluidization therapy bed including a fluidization space and a fluidizable medium positioned in the fluidization space, the air fluidization therapy bed receiving a flow of pressurized air from the air supply, the flow of pressurized air operable to fluidize the fluidizable medium,
a second patient support zone comprising a plurality of inflatable support bladders, and
a sonic emitter coupled to the second portion and positioned to transmit sonic waves through the bladders to impart a percussive force to a body supported on the second portion. - 17. The patient support apparatus of
clause 13 or 16, wherein the sonic emitter has a variable frequency and amplitude. - 18. The patient support apparatus of clause 17, wherein the patient support apparatus further comprises a sonic controller operable to control the frequency and amplitude of the sonic emitter.
- 19. The patient support apparatus of
clause 18, wherein the patient support apparatus further includes a controller operable to control the fluid supply and the sonic controller. - 20. The patient support apparatus of clause 19, wherein the patient support apparatus further includes a user interface, the user interface operable to accept a user input indicative of a desired operating parameter of the sonic emitter.
- 21. The patient support apparatus of
clause 20, wherein the controller modifies operation of the sonic controller to achieve the desired operating parameter of the sonic emitter. - 22. The patient support apparatus of
clause 13 or 16, wherein the second patient support zone is movable relative to the first patient support zone. - 23. The patient support apparatus of clause 22, wherein the patient support apparatus further comprises a sonic controller operable to control the frequency and amplitude of the sonic emitter.
- 24. The patient support apparatus of clause 23, wherein the sonic emitter is coupled to the second patient support zone to move therewith.
- 25. A patient support apparatus comprising
an air supply,
a first patient support zone comprising an air fluidization therapy bed including a fluidization space and a fluidizable medium positioned in the fluidization space, the air fluidization therapy bed receiving a flow of pressurized air from the air supply, the flow of pressurized air operable to fluidize the fluidizable medium,
a second patient support zone comprising a plurality of inflatable support bladders, and
a percussion assembly coupled to the second portion, the percussion assembly including a plurality of chambers, each chamber including a vent and positioned to impart a percussive force to a body supported on the second portion when the chamber is inflated. - 26. The patient support apparatus of
clause 14 or 25, wherein the patient support apparatus further comprises a plurality of conduits, each conduit coupled to a respective chamber. - 27. The patient support apparatus of
clause 26, wherein the patient support apparatus comprises a plurality of valves, each valve associated with one of the conduits coupled to a respective chamber. - 28. The patient support apparatus of clause 27, wherein the patient support apparatus includes a percussion/vibration controller that is operable to control the operation of the valves to selectively inflate the chambers.
- 29. The patient support apparatus of
clause 28, wherein the valves are coupled to the air supply such that opening of one of the plurality of valves permits a flow of air from the air supply to a respective chamber. - 30. The patient support apparatus of clause 29, wherein the vents of the chambers are sized such that they constrict flow out of each chamber, and wherein the flow of the air from the air supply is sufficient to rapidly expand the chamber when a valve is opened, the vent allowing the expanded chamber to contract when the valve is closed.
- 31. The patient support apparatus of
clause 14 or 25, wherein the patient support apparatus further comprises a percussion/vibration controller operable to control the frequency and amplitude of the inflations of the chambers. - 32. The patient support apparatus of clause 31, wherein the patient support apparatus further includes a controller operable to control the fluid supply and the percussion/vibration controller.
- 33. The patient support apparatus of
clause 32, wherein the patient support apparatus further includes a user interface, the user interface operable to accept a user input indicative of a desired operating parameter of the percussion/vibration controller. - 34. The patient support apparatus of clause 33, wherein the controller modifies operation of the percussion/vibration controller to achieve the desired operating parameter of the percussion/vibration controller.
- 35. The patient support apparatus of
clause 34, wherein the second patient support zone is movable relative to the first patient support zone. - 36. The patient support apparatus of clause 35, wherein the percussion assembly is coupled to the second patient support zone to move therewith.
- 37. A patient support apparatus comprising
an air supply,
a first patient support zone comprising an air fluidization therapy bed including a fluidization space and a fluidizable medium positioned in the fluidization space, the air fluidization therapy bed receiving a flow of pressurized air from the air supply, the flow of pressurized air operable to fluidize the fluidizable medium, and
a garment coupled to the air supply, the garment including a plurality of chambers, each chamber including a vent and positioned to impart a percussive force to a the body of a patient wearing the garment when the chamber is inflated. - 38. The patient support apparatus of clause 15 or 37, wherein the patient support apparatus further comprises a plurality of conduits, each conduit coupled to a respective chamber.
- 39. The patient support apparatus of clause 38, wherein the patient support apparatus comprises a plurality of valves, each valve associated with one of the conduits coupled to a respective chamber.
- 40. The patient support apparatus of clause 39, wherein the patient support apparatus includes a percussion/vibration controller that is operable to control the operation of the valves to selectively inflate the chambers.
- 41. The patient support apparatus of
clause 40, wherein the valves are coupled to the air supply such that opening of one of the plurality of valves permits a flow of air from the air supply to a respective chamber. - 42. The patient support apparatus of clause 41, wherein the vents of the chambers are sized such that they constrict flow out of each chamber, and wherein the flow of the air from the air supply is sufficient to rapidly expand the chamber when a valve is opened, the vent allowing the expanded chamber to contract when the valve is closed.
- 43. The patient support apparatus of clause 15 or 37, wherein the patient support apparatus further comprises a percussion/vibration controller operable to control the frequency and amplitude of the inflations of the chambers.
- 44. The patient support apparatus of clause 43, wherein the patient support apparatus further includes a controller operable to control the fluid supply and the percussion/vibration controller.
- 45. The patient support apparatus of
clause 44, wherein the patient support apparatus further includes a user interface, the user interface operable to accept a user input indicative of a desired operating parameter of the percussion/vibration controller. - 46. The patient support apparatus of clause 45, wherein the controller modifies operation of the percussion/vibration controller to achieve the desired operating parameter of the percussion/vibration controller.
- 47. The patient support apparatus of clause 15 or 37, wherein the patient support apparatus further comprises a second patient support zone comprising a plurality of inflatable support bladders
- 48. The patient support apparatus of clause 47, wherein the second patient support zone is movable relative to the first patient support zone.
- 49. A patient support apparatus comprising
an air supply,
a first patient support zone comprising an air fluidization therapy bed including a fluidization space and a fluidizable medium positioned in the fluidization space, the air fluidization therapy bed receiving a flow of pressurized air from the air supply, the flow of pressurized air operable to fluidize the fluidizable medium,
a second patient support zone comprising a plurality of inflatable support bladders, and
a micro-climate assembly coupled to the second portion, the micro-climate assembly including an upper layer of vapor permeable material, a lower layer coupled to the upper layer to define a chamber having an inlet and an outlet, the chamber having an interior space, a three dimensional material positioned in the interior space, micro-climate assembly coupled to the air supply to selectively receive a flow of air therefrom, the flow of air entering the chamber through the inlet and exiting the chamber through the outlet. - 50. The patient support apparatus of
clause 49, wherein patient support apparatus includes a first conduit from the air supply to the air fluidization therapy bed. - 51. The patient support apparatus of
clause 50, wherein the patient support apparatus further comprises a valve coupled to the first conduit and a second conduit coupled to the valve, the second conduit coupled to the micro-climate assembly. - 52. The patient support apparatus of
clause 50, wherein the patient support apparatus further comprises a controller operable to control the valve to selectively direct a flow of air from the air supply to the micro-climate assembly. - 53. The patient support apparatus of
clause 52, wherein the patient support apparatus further includes a sonic emitter operable to impart a percussive force to a patient supported on the patient support apparatus. - 54. The patient support apparatus of
clause 52, wherein the patient support apparatus further includes a garment coupled to the air supply, the garment including a plurality of chambers, each chamber including a vent and positioned to impart a percussive force to a the body of a patient wearing the garment when the chamber is inflated. - 55. The patient support apparatus of
clause 52, wherein the patient support apparatus further includes a percussion assembly coupled to the second portion, the percussion assembly including a plurality of chambers, each chamber including a vent and positioned to impart a percussive force to a body supported on the second portion when the chamber is inflated.
Claims (14)
- A patient support apparatus comprising a controller, a user interface, an air supply, a first patient support zone comprising an air fluidization therapy bed including a fluidization space and a fluidizable medium positioned in the fluidization space, the air fluidization therapy bed receiving a flow of pressurized air from the air supply, the flow of pressurized air operable to fluidize the fluidizable medium, a second patient support zone comprising a plurality of inflatable support bladders, and a micro-climate assembly coupled to the second zone, a first conduit from the air supply to the air fluidization therapy bed, a diverter valve coupled to the first conduit and a second conduit coupled to the diverter valve, the second conduit coupled to the mircro-climate assembly, CCC
- The patient support apparatus of claim 1, wherein the micro-climate assembly comprises an upper layer of vapor permeable material, a lower layer coupled to the upper layer to define a chamber having an inlet and an outlet, the chamber having an interior space, a three dimensional material positioned in the interior space, micro-climate assembly coupled to the air supply to selectively receive a flow of air therefrom, the flow of air entering the chamber through the inlet and exiting the chamber through the outlet.
wherein the controller is operable based on user inputs to control the diverter valve to selectively direct a flow of air from the air supply to the micro-climate assembly such that the air supply supplies both the air fluidization therapy bed and the micro-climate assembly. - The patient support apparatus of either claim 1 or claim 2, wherein the patient support apparatus further includes a sonic emitter operable to impart a percussive force to a patient supported on the patient support apparatus.
- The patient support apparatus of any preceding claim, wherein the patient support apparatus further includes a garment coupled to the air supply, the garment including a plurality of chambers, each chamber including a vent and positioned to impart a percussive force to a the body of a patient wearing the garment when the chamber is inflated.
- The patient support apparatus of any preceding claim, wherein the patient support apparatus further includes a percussion assembly coupled to the second portion, the percussion assembly including a plurality of chambers, each chamber including a vent and positioned to impart a percussive force to a body supported on the second portion when the chamber is inflated.
- The patient support apparatus of any preceding claim, further comprising a pulsator coupled to the air fluidization therapy bed, wherein the pulsator is in fluid communication with the air supply and operable to form air pulses from at least a portion of the flow from the air supply.
- The patient support apparatus of claim 6, wherein the frequency and magnitude of the air pulses are variable.
- The patient support apparatus of claim 7, wherein the patient support apparatus further comprises a percussion/vibration controller operable to control the operation of the pulsator.
- The patient support apparatus of claim 8, wherein the user interface is operable to receive inputs from a user indicative of at least one desired operating parameter of the percussion/vibration controller, and wherein the controller operable to modify the operation of the percussion/vibration controller to achieve the desired operating parameter.
- The patient support apparatus of any one of claims 6 to 9, wherein the patient support apparatus comprises a third conduit, a tap coupled to the third conduit, a fourth conduit coupled to the tap and the pulsator, a fifth conduit coupled to the tap and the air fluidization therapy bed, the fifth conduit smaller than the third conduit and the fourth conduit.
- The patient support apparatus of claim 10, wherein the pulsator comprises a valve that is openable to allow air to flow through the fourth conduit and the valve of the pulsator.
- The patient support apparatus of claim 11, wherein the valve of the pulsator is in communication with the space of the air fluidization therapy bed such that when the valve opens, air flows through the valve into the space.
- The patient support apparatus of any preceding claim including an air conditioner for conditioning the air from the supply to change the temperature or to remove fluid from the air.
- The patient support apparatus of any preceding claim wherein the air supply comprises a variable speed blower.
Applications Claiming Priority (3)
Application Number | Priority Date | Filing Date | Title |
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US201361778789P | 2013-03-13 | 2013-03-13 | |
EP14159207.1A EP2777678A1 (en) | 2013-03-13 | 2014-03-12 | Air fluidized therapy bed having pulmonary therapy |
EP15158895.1A EP2910233A3 (en) | 2013-03-13 | 2014-03-12 | Air fluidized therapy bed having pulmonary therapy |
Related Parent Applications (2)
Application Number | Title | Priority Date | Filing Date |
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EP15158895.1A Division EP2910233A3 (en) | 2013-03-13 | 2014-03-12 | Air fluidized therapy bed having pulmonary therapy |
EP14159207.1A Division EP2777678A1 (en) | 2013-03-13 | 2014-03-12 | Air fluidized therapy bed having pulmonary therapy |
Publications (2)
Publication Number | Publication Date |
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EP3103428A1 true EP3103428A1 (en) | 2016-12-14 |
EP3103428B1 EP3103428B1 (en) | 2020-03-11 |
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EP15158895.1A Withdrawn EP2910233A3 (en) | 2013-03-13 | 2014-03-12 | Air fluidized therapy bed having pulmonary therapy |
EP16172750.8A Active EP3103428B1 (en) | 2013-03-13 | 2014-03-12 | Air fluidized therapy bed having pulmonary therapy |
EP14159207.1A Withdrawn EP2777678A1 (en) | 2013-03-13 | 2014-03-12 | Air fluidized therapy bed having pulmonary therapy |
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EP15158895.1A Withdrawn EP2910233A3 (en) | 2013-03-13 | 2014-03-12 | Air fluidized therapy bed having pulmonary therapy |
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EP14159207.1A Withdrawn EP2777678A1 (en) | 2013-03-13 | 2014-03-12 | Air fluidized therapy bed having pulmonary therapy |
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EP (3) | EP2910233A3 (en) |
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US10489661B1 (en) | 2016-03-08 | 2019-11-26 | Ocuvera LLC | Medical environment monitoring system |
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CN110063885B (en) * | 2019-04-30 | 2021-03-26 | 中国人民解放军陆军军医大学第一附属医院 | Cleaning pool for burns |
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Also Published As
Publication number | Publication date |
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EP2910233A3 (en) | 2015-12-09 |
EP2910233A2 (en) | 2015-08-26 |
US10238560B2 (en) | 2019-03-26 |
EP3103428B1 (en) | 2020-03-11 |
US20140259428A1 (en) | 2014-09-18 |
EP2777678A1 (en) | 2014-09-17 |
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